An emergency generator with a cushioning silencing mechanism
The detachable shock-absorbing base and plug-in and screw-locking structure solve the vibration and noise problems of the emergency generator, achieving convenient disassembly and assembly and a quiet operation, thus improving the ease of use of the equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- YINGTAI GROUP
- Filing Date
- 2026-05-08
- Publication Date
- 2026-07-14
AI Technical Summary
Existing emergency generators generate significant vibration and noise during operation, and the existing shock absorption structure is inconvenient to install and disassemble, affecting the stability of equipment operation and the environment, resulting in poor adaptability.
It adopts a detachable shock-absorbing base, and achieves a buffering and quiet effect through the cooperation of the base plate, shock-absorbing base, clips, movable plate, adjustment plate and spring. The plug-in and screw locking structure makes it easy to disassemble and assemble.
While ensuring stable support, it achieves effective buffering and noise reduction, and facilitates the transportation, maintenance and replacement of emergency generators.
Smart Images

Figure CN122394282A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of generator technology, and in particular to an emergency generator with a buffer and noise reduction mechanism. Background Technology
[0002] Emergency generators are widely used in scenarios such as power outages, disaster relief, and temporary power supply. They typically need to be put into operation within a short period of time to ensure the continuity of power supply. When existing emergency generators are working, the engine drives the power generation components to rotate at high speed, which can easily generate significant vibration and noise. Especially when used indoors, in residential areas, or in places with high environmental requirements, the vibration can be transmitted to the ground through the machine body, thereby affecting the stability of the equipment's operation and causing interference to the surrounding environment.
[0003] In existing technologies, although some generators have fixed shock-absorbing pads or support structures at their bottom, these structures are usually not convenient to install and disassemble, and have poor adaptability when transporting, inspecting, maintaining, or replacing parts. Therefore, there is an urgent need for an emergency generator with a buffer and noise reduction mechanism that is easy to transport. Summary of the Invention
[0004] The purpose of this invention is to address the shortcomings of existing technologies by proposing an emergency generator with a buffer and noise reduction mechanism.
[0005] To achieve the above objectives, the present invention adopts the following technical solution: An emergency generator with a buffer and noise reduction mechanism includes an emergency generator, a base plate fixedly installed at the bottom of the emergency generator, and detachable shock-absorbing bases inserted and installed at the corners of the bottom of the base plate; an insert plate fixedly installed above the shock-absorbing base, and a slot is opened at the bottom of the insert plate; a locking element adapted to the slot is vertically movable on the base by the preload of a spring; and an adjusting plate for locking or unlocking is horizontally movable on the shock-absorbing base, and the adjusting plate is locked by screws.
[0006] In addition, a preferred structure is that the side of the base plate has multiple slots, and each slot is adapted to the insert plate.
[0007] Furthermore, in a preferred configuration, a communicating vertical cavity is provided on the base plate below the slot, and all the clips enter the slot through the vertical cavity.
[0008] In addition, a preferred structure is that each of the card components has a movable plate fixedly installed at its bottom and a sloped surface at its top.
[0009] In addition, a preferred structure is that the bottom of the base plate has spring cavities on both sides of the vertical cavity, and springs are installed downward in each spring cavity, with the other end of each spring connected to the movable plate.
[0010] In addition, a preferred structure is that a guide cavity is provided transversely through the shock-absorbing base, and a guide rod adapted to the guide cavity is fixedly provided on the adjustment plate.
[0011] In addition, a preferred structure is that each end of the guide rod is fixedly provided with a reset member, and the reset member is provided with a reset ramp for pushing the movable plate downward.
[0012] In addition, a preferred structure is that each side of the guide rod is fixedly provided with a support plate, and when the adjusting plate is located at the innermost side, the support plate moves and locks to the bottom of the movable plate.
[0013] Furthermore, in a preferred configuration, the shock-absorbing base has multiple internal threaded cavities, and the adjusting plate has multiple external threaded cavities, with both the internal and external threaded cavities meshing with screws.
[0014] The beneficial effects of this invention are as follows: through the coordinated arrangement of the base plate, shock-absorbing base, clips, movable plate, adjusting plate and spring, it can ensure the stability of the bottom support of the emergency generator while achieving a good buffering and noise reduction effect. In addition, the shock-absorbing base is easy to disassemble and assemble, and is convenient for later transportation, maintenance and replacement. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the structure of an emergency generator with a buffer and noise reduction mechanism proposed in this invention; Figure 2 for Figure 1 Enlarged detail of the shock-absorbing base in the middle; Figure 3 for Figure 2 A schematic diagram of the structure after the shock-absorbing base has been removed; Figure 4 for Figure 3 A schematic diagram of the exploded structure in the image; Figure 5 This is a schematic diagram of the structure of the movable plate proposed in this invention; Figure 6 This is a schematic diagram of the structure of the shock-absorbing base proposed in this invention; Figure 7 for Figure 6 A schematic diagram of the exploded structure in the image; Figure 8 This is a schematic diagram of the structure of the adjustment plate proposed in this invention; Figure 9 This is a bottom view of the shock-absorbing base proposed in this invention.
[0016] In the diagram: 1 Emergency generator, 2 Base plate, 21 Slot, 22 Vertical cavity, 23 Spring cavity, 231 Spring, 24 Movable plate, 241 Clip, 242 Slope, 3 Shock-absorbing base, 31 Insert plate, 32 Guide cavity, 33 Internal thread cavity, 34 Slot, 4 Adjusting plate, 41 Reset piece, 411 Reset ramp, 42 Guide rod, 421 Support plate, 43 External thread cavity, 5 Screw. Detailed Implementation
[0017] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.
[0018] Reference Figure 1-9 An emergency generator with a buffer and noise reduction mechanism includes an emergency generator 1. A base plate 2 is fixedly mounted on the bottom of the emergency generator 1. Removable shock-absorbing bases 3 are inserted and installed at the corners of the bottom of the base plate 2. An insert plate 31 is fixedly mounted on top of the shock-absorbing base 3, and the insert plate 31 is adapted to a slot 21 on the base plate 2, facilitating quick insertion and installation between the shock-absorbing base 3 and the base plate 2. A slot 34 is provided on the bottom of each insert plate 31. A locking piece 241 adapted to the slot 34 is vertically movable on the base plate 2 by the preload of a spring 231. An adjusting plate 4 for locking or unlocking is horizontally movable on the shock-absorbing base 3, and the adjusting plate 4 is locked by screws 5.
[0019] The base plate 2 has multiple slots 21 on its side, and each slot 21 is compatible with the insert plate 31. Through the cooperation of the slots 21 and the insert plate 31, the shock-absorbing base 3 can be quickly inserted and installed from the bottom of the base plate 2, which is convenient for later disassembly and replacement.
[0020] The base plate 2 has a communicating cavity 22 located below the slot 21, and the locking pieces 241 all enter the slot 21 through the cavity 22. With this configuration, the locking pieces 241 can move up and down within the cavity 22 and form a locking limit on the insert plate 31, thereby improving the stability of the connection between the shock-absorbing base 3 and the base plate 2.
[0021] Each of the clips 241 has a movable plate 24 fixedly installed at its bottom, and each of the clips 241 has a slope 242 at its top. The slope 242 facilitates the insertion of the insert plate 31, which exerts pressure on the clip 241 during insertion, allowing the clip 241 to smoothly move into place during insertion. After the insert plate 31 is inserted into place, the clip 241 is then automatically locked back into the slot 34 under the action of the spring 231.
[0022] The bottom of the base plate 2 has spring cavities 23 on both sides of the vertical cavity 22. Springs 231 are installed downward in each spring cavity 23, and the other end of each spring 231 is connected to the movable plate 24. The springs 231 provide a restoring force to the movable plate 24 and the locking piece 241, so that the locking piece 241 can automatically reset after the external force is released, thus completing the locking and fixing of the shock-absorbing base 3.
[0023] The shock-absorbing base 3 has a guide cavity 32 that extends horizontally through it, and the adjusting plate 4 has a guide rod 42 that is adapted to the guide cavity 32. When the guide rod 42 moves within the guide cavity 32, it can guide the lateral movement of the adjusting plate 4, making the operation of the adjusting plate 4 more stable.
[0024] Each guide rod 42 has a fixed reset component 41 at its end, and the reset component 41 has a reset ramp 411 for pushing the movable plate 24 downward. During the movement of the adjusting plate 4, the reset component 41 can cooperate with the movable plate 24 to press or release, so that the movable plate 24 drives the locking component 241 to rise or fall in the vertical cavity 22, thereby realizing the switching between the unlocked and locked states.
[0025] Each guide rod 42 has a support plate 421 fixedly installed on its side. When the adjusting plate 4 is at its innermost position, the support plate 421 moves and locks to the bottom of the movable plate 24. The support plate 421 supports the bottom of the movable plate 24, thus maintaining the position of the clamp 241 and further preventing the shock-absorbing base 3 from loosening during use.
[0026] The shock-absorbing base 3 has multiple internal threaded cavities 33, and the adjusting plate 4 has multiple external threaded cavities 43. Both the internal threaded cavities 33 and the external threaded cavities 43 are adapted to mesh with the screws 5. The screws 5 are used to fix the adjusting plate 4 to the shock-absorbing base 3, so that the adjusting plate 4 remains stable in the locked state and prevents it from shifting during equipment operation vibration.
[0027] In this embodiment, the vibration generated by the emergency generator 1 during operation can be transmitted to the vibration damping base 3 through the base plate 2, and then buffered and absorbed by the vibration damping base 3, thereby reducing the vibration transmission to the ground during generator operation and weakening the noise propagation to a certain extent. The vibration damping base 3 is installed in a detachable plug-in manner, which facilitates quick disassembly and assembly during transportation, maintenance or replacement, improving ease of use.
[0028] During installation, first align the insert plate 31 on the shock-absorbing base 3 with the slot 21 on the side of the base plate 2 and insert it inward. During insertion, the slot 34 at the bottom of the insert plate 31 will push the clip 241 downward within the vertical cavity 22. The clip 241 will make way with the cooperation of the slope 242. After the insert plate 31 is fully inserted, the clip 241 will move upward under the action of the spring 231 and lock into the slot 34, thus completing the initial fixation between the shock-absorbing base 3 and the base plate 2.
[0029] Furthermore, during tightening, the adjusting plate 4 is pushed to move laterally along the shock-absorbing base 3. The guide rod 42 drives the support plate 421 to move synchronously. Through the support plate 421 supporting the bottom of the movable plate 24, the locking piece 241 can be held in position, further preventing the shock-absorbing base 3 from loosening during use. Then, the adjusting plate 4 is locked to the inner threaded cavity 33 and the outer threaded cavity 43 on the shock-absorbing base 3 by the screws 5, thus completing the final fixation.
[0030] During disassembly, first loosen screw 5, then pull the adjusting plate 4 to disengage it from the locked position. At this time, the barrel reset part 41 can push the movable plate 24 downward to release the limit of the locking part 241 on the slot 34. Then the shock-absorbing base 3 can be pulled out from the base plate 2. The disassembly and assembly process is relatively convenient.
[0031] In this invention, the combination of the base plate 2, the shock-absorbing base 3, the clamp 241, the movable plate 24, the adjusting plate 4 and the spring 231 can ensure the stability of the bottom support of the emergency generator 1 while achieving a good buffering and noise reduction effect. Furthermore, the shock-absorbing base 3 is easy to disassemble and assemble, and is convenient for later transportation, maintenance and replacement.
[0032] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.
Claims
1. An emergency generator with a buffer and noise reduction mechanism, comprising an emergency generator (1), characterized in that, The emergency generator (1) is fixedly provided with a base plate (2), and detachable shock-absorbing bases (3) are inserted and installed at the corners of the bottom of the base plate (2). A plate (31) is fixedly installed on the top of the shock-absorbing base (3). The bottom of the plate (31) is provided with a slot (34). A clip (241) adapted to the slot (34) is vertically movable on the base (2) by the pre-tightening force of the spring (231). An adjustment plate (4) for locking or unlocking is horizontally movable on the shock-absorbing base (3), and the adjustment plate (4) is locked by a screw (5).
2. An emergency generator with a buffer and noise reduction mechanism according to claim 1, characterized in that, The base plate (2) has multiple slots (21) on its side, and each slot (21) is adapted to the insert plate (31).
3. An emergency generator with a buffer and noise reduction mechanism according to claim 2, characterized in that, The base plate (2) has a communicating cavity (22) located below the slot (21), and the clips (241) all enter the slot (21) through the cavity (22).
4. An emergency generator with a buffer and noise reduction mechanism according to claim 3, characterized in that, Each of the card pieces (241) has a movable plate (24) fixedly installed at its bottom, and each of the card pieces (241) has a slope (242) installed at its top.
5. An emergency generator with a buffer and noise reduction mechanism according to claim 4, characterized in that, The bottom of the base plate (2) is provided with spring cavities (23) on both sides of the vertical cavity (22). Springs (231) are installed downward in the spring cavities (23), and the other end of the springs (231) is connected to the movable plate (24).
6. An emergency generator with a buffer and noise reduction mechanism according to claim 5, characterized in that, The shock-absorbing base (3) has a guide cavity (32) that runs horizontally through it, and the adjustment plate (4) has a guide rod (42) that is adapted to the guide cavity (32).
7. An emergency generator with a buffer and noise reduction mechanism according to claim 6, characterized in that, Each end of the guide rod (42) is fixedly provided with a reset component (41), and the reset component (41) is provided with a reset ramp (411) for pushing the movable plate (24) to move downward.
8. An emergency generator with a buffer and noise reduction mechanism according to claim 6, characterized in that, Each guide rod (42) is fixedly provided with a support plate (421) on its side. When the adjusting plate (4) is located at the innermost side, the support plate (421) moves and locks to the bottom of the movable plate (24).
9. An emergency generator with a buffer and noise reduction mechanism according to claim 5, characterized in that, The shock-absorbing base (3) has multiple internal threaded cavities (33), and the adjusting plate (4) has multiple external threaded cavities (43). Both the internal threaded cavities (33) and the external threaded cavities (43) are adapted to mesh with the screw (5).